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Preparation of water-soluble nanographite and its application in water-based cutting fluid

机译:水溶性纳米石墨的制备及其在水性切削液中的应用

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摘要

Water-soluble nanographite was prepared by in situ emulsion polymerization using methacrylate as polymeric monomer. The dispersion stability and dispersion state of graphite particles were evaluated by UV-visible spectrophotometry and scanning electron microscopy, respectively. The water-soluble nanographite was then added into the water-based cutting fluid as lubricant additive. The lubrication performance of water-based cutting fluid with the nanographite additive was studied on four-ball friction tester and surface tensiometer. Results indicate that the modification method of in situ emulsion polymerization realizes the uniform and stabilized dispersion of nanographite in aqueous environment. The optimal polymerization condition is 70°C (polymerization temperature) and 5 h (polymerization time). The addition of nanographite decreases the friction coefficient and wear scar diameter by 44% and 49%. Meanwhile, the maximum non-seizure load (PB) increases from 784 to 883 N, and the value of surface tension (32.76 × 10−3 N/m) is at low level. Nanographite additive improves apparently the lubrication performance of water-based cutting fluid.
机译:通过使用甲基丙烯酸酯作为聚合单体的原位乳液聚合制备水溶性纳米石墨。分别通过紫外可见分光光度法和扫描电子显微镜评价石墨颗粒的分散稳定性和分散状态。然后将水溶性纳米石墨作为润滑剂添加剂添加至水基切削液中。在四球摩擦试验机和表面张力仪上研究了含纳米石墨添加剂的水基切削液的润滑性能。结果表明,原位乳液聚合改性方法实现了纳米石墨在水环境中的均匀稳定分散。最佳聚合条件为70°C(聚合温度)和5 h(聚合时间)。纳米石墨的加入使摩擦系数和磨痕直径减小了44%和49%。同时,最大非咬合载荷(PB)从784 N增加到883 N,表面张力值(32.76×10 -3 N / m)处于较低水平。纳米石墨添加剂明显改善了水性切削液的润滑性能。

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